亚洲免费av电影一区二区三区,日韩爱爱视频,51精品视频一区二区三区,91视频爱爱,日韩欧美在线播放视频,中文字幕少妇AV,亚洲电影中文字幕,久久久久亚洲av成人网址,久久综合视频网站,国产在线不卡免费播放

        ?

        懸掛式獨(dú)立中心管氣舉反循環(huán)系統(tǒng)在天津地?zé)峋┕ぶ械膽?yīng)用研究

        2018-02-16 11:54:56黃賢龍李志杰劉贊楊忠彥董秋生
        中國(guó)科技縱橫 2018年22期
        關(guān)鍵詞:天津地區(qū)氣舉難題

        黃賢龍 李志杰 劉贊 楊忠彥 董秋生

        摘 要:隨著天津地區(qū)深部地?zé)豳Y源開(kāi)發(fā)力度的加大,地?zé)峋@探的深度和鉆進(jìn)難度越來(lái)越高。特別是天津地區(qū)古生界奧陶系灰?guī)r和薊縣系霧迷山組白云巖等漏失嚴(yán)重地層,因巖屑難以上返,無(wú)法建立有效的循環(huán),容易造成埋鉆,卡鉆等事故。本文針對(duì)以上難題,引進(jìn)反循環(huán)鉆井工藝,以常規(guī)氣舉反循環(huán)設(shè)備為基礎(chǔ),并針對(duì)其氣密性差、造價(jià)高、使用保養(yǎng)成本高、參數(shù)難以控制的缺點(diǎn)進(jìn)行改進(jìn),研發(fā)一套新型的氣舉反循環(huán)鉆井系統(tǒng)工具,并進(jìn)行實(shí)鉆試驗(yàn),成功鉆穿天津地區(qū)霧迷山組三四段地層,解決天津地區(qū)破碎地層難以鉆穿的難題,并獲得相應(yīng)的鉆進(jìn)參數(shù),為今后天津地區(qū)地?zé)峋囱h(huán)鉆進(jìn)提供經(jīng)驗(yàn)和借鑒。

        關(guān)鍵詞:氣舉反循環(huán);地?zé)峋┕ぃ汇@進(jìn)參數(shù);霧迷山組地層;地?zé)崮茉?/p>

        中圖分類(lèi)號(hào):TU991.12 文獻(xiàn)標(biāo)識(shí)碼:A 文章編號(hào):1671-2064(2018)22-0151-02

        1 Introduction

        Under the call of national energy saving and emission reduction, geothermal resources are more and more popular with the advantages of no pollution, no emission, recycling and so on. In recent years, the development of deep thermal reservoir in Tianjin area is increasing, the depth of geothermal well drilling (Ma Z P et al., 2008) is getting deeper and deeper, and the drilling difficulty is becoming more and more challenging. Due to the particularity of underground geological conditions in Tianjin area, it is difficult to drill through the broken strata in bedrock by typical circulation drilling technology. Air lift reverse circulation drilling technology has been mature both domestic and abroad (Xu L W et al., 2009, Xiong L et al., 2014, Wang Y G et al., 2009), but the conventional double-wall drilling pipe reverse circulation equipment is difficult to carry large pieces of lithic debris up and back due to poor gas tightness, so it is difficult to drill through the broken strata in Tianjin area. In addition, due to its high equipment cost, difficult maintenance, relatively poor drilling efficiency as compared to the positive circulation, so the air lift reverse circulation drilling technology has not been popularized in Tianjin area.

        In this paper, based on the improvement of conventional double-wall drilling pipe reverse circulation (Chen Y et al., 2009) equipment, a set of new air lift reverse circulation drilling system tool, which is suspension independent central tube gas lift reverse circulation system, has been developed. The equipment overcomes the disadvantages of poor air tightness, high cost, high maintenance cost and difficult to control the parameters. It has been successfully used in the construction of a geothermal well in Tianjin, and successfully drilled through the third and fourth stratum with broken strata in Wumishan, and achieved good results.

        2 Design of suspended Independent Central Tube Air lift reverse Circulation system

        2.1 Design Principle

        In order to solve the disadvantages such as high cost, poor airtight and difficult parameter control of double-wall drill pipe reverse circulation system, the following principle should be followed in the design phase: for positive circulation drilling tool, the anti-circulation system module should be installed. It has the function of reverse circulation, and the conversion of positive and reverse circulation drilling tool structure is simple: it does not destroy the original drilling tool structure and does not affect the service life of the original drilling tool; (3) reliable performance: to ensure reliable airtight and sufficient strength of the system device is economical and practical; to ensure the stability of the system device, to reduce the cost as much as possible, which is conducive to popularization and application.

        2.2 Process structure design

        Independent center pipe and concentric installation of positive circulation drilling tool to form two channels necessary for reverse circulation. The top of the center tube is suspended from the positive circulation faucet by special parts and can be rotated freely through bearing.

        Remove the gooseneck pipe of the positive circulating faucet, install the suspension rotating assembly, connect the compressed air intake pipe, connect the outlet interface with the high pressure hose, connect the assembly with the central pipe, air water mixer, and the central pipe string through the square drill pipe, A double-wall pipe system is formed with the drill pipe, and the whole drilling tool structure is connected with the reverse circulation special drill bit at the bottom of the whole drilling tool structure, so that the original normal circulation drilling tool structure is modified to form a set of air-lift reverse circulation drilling tool structure (see figure 1).

        3 Practical Drilling Test and Analysis of drilling parameters

        practical drilling test has been carried out to successfully drill through the third and fourth.

        In this drilling test, a geothermal well with a depth of more than 3000 meters is designed for the first and second stratum of Wumishan in a certain area of Tianjin. In the construction of this well, the broken strata of the third and fourth stratum of Wumishan was drilled, and a large number of leakage of drilling fluid resulted in the lithic debris being unable to return, too much debris accumulated in the well, and the positive circulation could not be continued. The basic data of geothermal wellbore structure are shown in Table 1.

        The reverse circulation drilling well is the third and fourth stratum of Wumishan of Jixian system, which is mainly yellow and gray dolomite. At the bottom of the third stratum, there are 7 layers of red beds with purple red, brick red dolomite and muddy dolomite. The lower part is covered with gravel quartz sandstone thin layer. In the drilling process, there are about 72m broken strata in the four sections of drilling, which often collapse and lose seriously at the same time.

        4 Conclusion

        1)The components of the air lift reverse circulation system are modularized, which is convenient for installation and maintenance, and does not need to change the drilling rig. The conversion of positive circulation and reverse circulation technology is convenient and quick.2)Compared with the traditional double-wall reverse circulation system, the cost of the system has been greatly reduced. From the economic point of view, the popularization and application of the system has a very obvious advantage.3)The system has the advantages of good air tightness, controllable drilling parameters and higher sinking ratio, which is more suitable for the geological conditions of the complicated Wumishan formation with serious leakage than the traditional double-wall drilling pipe reverse circulation system.

        References

        [1]Ma Z P,Pang H,Wang Y H,et al.2008.Geothermal well drilling and completion in Tianjin Area. Exploration Engineering (Rock & Soil Drilling and Tunneling),12:9-11.

        [2]Xu L W,Liu Z R,Zhao M J,et al.2009.Alternative process air drilling technology and its new development.Exploration Engineering (Rock & Soil Drilling and Tunneling),36(10):8-14.

        [3]Xiong L,Zhang X L,Xiong J Q, et al.2014. Preliminary analysis on influence factors of air-lift reverse circulation drilling efficiency to large diameter engineering well.Exploration Engineering (Rock & Soil Drilling and Tunneling),41(5):42-45.

        [4]Wang Y G,Xiao H L,Xie L S.2009. Application of airlift reverse circulation drilling in Jingre 164# well of 3512m depth.Exploration Engineering (Rock & Soil Drilling and Tunneling), 36(2):9-11.

        [5]Chen Y, Duan D P.2009.Application of airlift reverse circulation drilling in Baoli ZK3 deep geothermal well of Guizhou.Exploration Engineering (Rock & Soil Drilling and Tunneling), 36(4):23-28.

        猜你喜歡
        天津地區(qū)氣舉難題
        天津地區(qū)口感型蔬菜品種介紹
        天津地區(qū)黏蟲(chóng)遷飛發(fā)生特征及監(jiān)測(cè)預(yù)報(bào)
        借調(diào)難題
        廉政瞭望(2022年8期)2022-05-23 01:18:08
        同井場(chǎng)氣舉工藝技術(shù)在靖邊氣田的應(yīng)用
        云南化工(2021年10期)2021-12-21 07:33:48
        渤海S油田氣舉故障診斷及解決對(duì)策
        海洋石油(2021年3期)2021-11-05 07:42:24
        涪陵頁(yè)巖氣田柱塞氣舉工藝研究與應(yīng)用
        難題大作戰(zhàn)
        巧解難題
        天津地區(qū)地?zé)崃黧w化學(xué)成分垂向演化特征研究
        LG天津地區(qū)技術(shù)交流會(huì)成功召開(kāi)
        在线亚洲午夜理论av大片| 日本免费久久高清视频| 亚洲国产精品无码一线岛国| 丁字裤少妇露黑毛| 亚洲欧洲日本精品| 蜜桃av噜噜一区二区三区香| 校园春色日韩高清一区二区| 色先锋av影音先锋在线| 99久久夜色精品国产网站| 亚洲色偷偷偷综合网另类小说| 一区二区三区亚洲视频| 东京热无码av一区二区| 日本动态120秒免费| 午夜天堂精品一区二区| 在线播放草猛免费视频| 国产女人水真多18毛片18精品| 国产精品福利影院| 中文字幕中文一区中文字幕| 亚洲国产精品一区二区毛片| 人人爽人人澡人人人妻| 久久精品伊人无码二区| 在线久草视频免费播放| 狠狠摸狠狠澡| 在线播放亚洲第一字幕| 91精品国产无码在线观看| 亚洲国产中文字幕精品| 亚洲裸男gv网站| 国产人成无码视频在线| 亚洲一区二区三区自拍麻豆| 丰满熟妇乱又伦精品| 亚洲国产精品久久久久秋霞1| 久久久精品国产亚洲麻色欲| 亚洲97成人在线视频| 久久久久久国产精品免费免费男同 | 粉嫩极品国产在线观看免费一区 | 国产av无码专区亚洲av中文| 性导航app精品视频| 麻豆成年人视频在线观看| 高潮抽搐潮喷毛片在线播放| 无码中文字幕在线DVD| 在线日韩中文字幕乱码视频 |